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首页> 外文期刊>Separation and Purification Technology >Effect of electrostatic repulsive force on the permeate flux and flux modeling in the microfiltration of negatively charged microspheres
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Effect of electrostatic repulsive force on the permeate flux and flux modeling in the microfiltration of negatively charged microspheres

机译:静电排斥力对带负电荷的微球微滤中渗透通量和通量模型的影响

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摘要

A study on the permeate flux was performed in a stirred cell filled with monodispersed carboxylated microspheres (polystyrene/polymethacrylic acid, PS/PMAA), to investigate the effects of surface charge (the number density of surface carboxyl group, N_c; 0.45, 5.94, 9.14, and 10.25 nm~(-2)) and the stirrer speed (300, 400, and 600 rpm) under constant transmembrane pessure. The permeate flux was found to be dependent on the surface charge, the ionic strength, and the stirrer speed. The permeate flux was proportional to the surface charge of microspheres and invesely proportional to the ionic strength because of electrostatic repulsive interaction and steric hindrance. The cake porosity was estimated by Kozeny-Carman equation from the steady-state permeate flux data. Experimental data elucidated that the cake porosity was extended from 0.211 to 3.04 upon the introduction of carboxyl group on the microsphere surface, leading to the high permeate flux. Consequently, resistance-in-series model was employed for the modeling of the permeate flux and showed a good agreemtn with the experimental results.
机译:在充满单分散羧化微球(聚苯乙烯/聚甲基丙烯酸,PS / PMAA)的搅拌池中进行渗透通量研究,以研究表面电荷的影响(表面羧基的数量密度,N_c; 0.45,5.94,在恒定的跨膜压力下,搅拌速度分别为9.14、10.25 nm〜(-2)和搅拌器速度(300、400和600 rpm)。发现渗透通量取决于表面电荷,离子强度和搅拌器速度。由于静电排斥作用和位阻,渗透通量与微球的表面电荷成正比,与离子强度成正比。饼的孔隙率是通过Kozeny-Carman方程从稳态渗透通量数据估算的。实验数据表明,在微球表面引入羧基后,滤饼的孔隙率从0.211扩大到3.04,从而导致高渗透通量。因此,采用串联电阻模型对渗透通量进行建模,并与实验结果显示出良好的一致性。

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